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On page 1 showing 1 ~ 8 papers out of 8 papers

Titin and diaphragm dysfunction in mechanically ventilated rats.

  • Hieronymus W H van Hees‎ et al.
  • Intensive care medicine‎
  • 2012‎

Diaphragm weakness induced by mechanical ventilation may contribute to difficult weaning from the ventilator. For optimal force generation the muscle proteins myosin and titin are indispensable. The present study investigated if myosin and titin loss or dysfunction are involved in mechanical ventilation-induced diaphragm weakness.


Isokinetic testing of quadriceps function in COPD: feasibility, responsiveness, and minimal important differences in patients undergoing pulmonary rehabilitation.

  • Anouk A F Stoffels‎ et al.
  • Brazilian journal of physical therapy‎
  • 2022‎

Isokinetic testing of peripheral muscle function is valid and reliable in patients with chronic obstructive pulmonary disease (COPD).


Levosimendan affects oxidative and inflammatory pathways in the diaphragm of ventilated endotoxemic mice.

  • Willem-Jan M Schellekens‎ et al.
  • Critical care (London, England)‎
  • 2015‎

Controlled mechanical ventilation and endotoxemia are associated with diaphragm muscle atrophy and dysfunction. Oxidative stress and activation of inflammatory pathways are involved in the pathogenesis of diaphragmatic dysfunction. Levosimendan, a cardiac inotrope, has been reported to possess anti-oxidative and anti-inflammatory properties. The aim of the present study was to investigate the effects of levosimendan on markers for diaphragm nitrosative and oxidative stress, inflammation and proteolysis in a mouse model of endotoxemia and mechanical ventilation.


Hypercapnia attenuates ventilator-induced diaphragm atrophy and modulates dysfunction.

  • Willem-Jan M Schellekens‎ et al.
  • Critical care (London, England)‎
  • 2014‎

Diaphragm weakness induced by prolonged mechanical ventilation may contribute to difficult weaning from the ventilator. Hypercapnia is an accepted side effect of low tidal volume mechanical ventilation, but the effects of hypercapnia on respiratory muscle function are largely unknown. The present study investigated the effect of hypercapnia on ventilator-induced diaphragm inflammation, atrophy and function.


Assessment of dead-space ventilation in patients with acute respiratory distress syndrome: a prospective observational study.

  • Jonne Doorduin‎ et al.
  • Critical care (London, England)‎
  • 2016‎

Physiological dead space (VD/VT) represents the fraction of ventilation not participating in gas exchange. In patients with acute respiratory distress syndrome (ARDS), VD/VT has prognostic value and can be used to guide ventilator settings. However, VD/VT is rarely calculated in clinical practice, because its measurement is perceived as challenging. Recently, a novel technique to calculate partial pressure of carbon dioxide in alveolar air (PACO2) using volumetric capnography (VCap) was validated. The purpose of the present study was to evaluate how VCap and other available techniques to measure PACO2 and partial pressure of carbon dioxide in mixed expired air (PeCO2) affect calculated VD/VT.


Association between patient-reported outcomes and exercise test outcomes in patients with COPD before and after pulmonary rehabilitation.

  • Roy Meys‎ et al.
  • Health and quality of life outcomes‎
  • 2020‎

Over the years, the scope of outcomes assessment in chronic obstructive pulmonary disease (COPD) has broadened, allowing for the evaluation of various patient-reported outcomes (PROs). As it still remains unclear whether and to what extent PROs mirror the exercise performance of patients with COPD, the current study aimed to assess the association between different exercise test outcomes and PROs, before and after pulmonary rehabilitation (PR).


The role of calpains in ventilator-induced diaphragm atrophy.

  • Xiaoping Zhu‎ et al.
  • Intensive care medicine experimental‎
  • 2017‎

Controlled mechanical ventilation (CMV) is associated with diaphragm dysfunction. Dysfunction results from muscle atrophy and injury of diaphragm muscle fibers. Enhanced proteolysis and reduced protein synthesis play an important role in the development of atrophy. The current study is to evaluate the effects of the calpains inhibitor calpeptin on the development of diaphragm atrophy and activation of key enzymes of the ubiquitin-proteasome pathway in rats under CMV.


Plasma from septic shock patients induces loss of muscle protein.

  • Hieronymus W H van Hees‎ et al.
  • Critical care (London, England)‎
  • 2011‎

ICU-acquired muscle weakness commonly occurs in patients with septic shock and is associated with poor outcome. Although atrophy is known to be involved, it is unclear whether ligands in plasma from these patients are responsible for initiating degradation of muscle proteins. The aim of the present study was to investigate if plasma from septic shock patients induces skeletal muscle atrophy and to examine the time course of plasma-induced muscle atrophy during ICU stay.


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